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小麦花粉油质蛋白E I的分析揭示了其在育性和胁迫适应中的潜在作用。

Analysis of Wheat Pollen Ole E I Proteins Reveals Potential Roles in Fertility and Stress Adaptation.

作者信息

Zuo Jinghong, Jia Yanfeng, Wang Weiwei, Guo Chunman, Fang Zhaofeng, Zhang Yujuan, Fu Jinzhou, Zhao Sijia, Zhao Changping, Wang Dezhou, Yang Guohang, Tang Yimiao

机构信息

Institute of Hybrid Wheat, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China.

The Municipal Key Laboratory of the Molecular Genetics of Hybrid Wheat, Beijing 100097, China.

出版信息

Int J Mol Sci. 2025 Aug 9;26(16):7707. doi: 10.3390/ijms26167707.

Abstract

Abiotic stresses increasingly threaten wheat ( L.) productivity by impairing pollen development and fertilization, yet the molecular regulators that coordinate reproductive success with environmental resilience remain underexplored. Here, we present a comprehensive genome-wide analysis of the Pollen I (POEI) protein family in common wheat. A total of 104 genes were identified and classified into six phylogenetic clades, each sharing conserved exon-intron structures and key protein motifs. Promoter analysis revealed abundant cis-elements associated with phytohormone signaling and abiotic stress responses. Notably, was preferentially expressed in anthers, showing high expression during early anther development and responding to both high- and low-temperature stresses. Pairwise comparison between thermosensitive genic male-sterile wheat lines and fertile lines suggests a potential role for in regulating male fertility in response to temperature fluctuations. Our comprehensive analysis establishes a foundation for future functional studies of the family and provides insights into wheat fertility and stress resilience enhancement.

摘要

非生物胁迫通过损害花粉发育和受精日益威胁小麦(Triticum aestivum L.)的生产力,然而,协调生殖成功与环境适应能力的分子调节因子仍未得到充分研究。在此,我们对普通小麦中的花粉I(POEI)蛋白家族进行了全面的全基因组分析。共鉴定出104个基因,并将其分为六个系统发育分支,每个分支都具有保守的外显子-内含子结构和关键蛋白基序。启动子分析揭示了与植物激素信号传导和非生物胁迫反应相关的丰富顺式元件。值得注意的是,该基因在花药中优先表达,在花药发育早期表现出高表达,并对高温和低温胁迫均有响应。对温敏雄性不育小麦系和可育系的成对比较表明,该基因在响应温度波动调节雄性育性方面具有潜在作用。我们的全面分析为该基因家族未来的功能研究奠定了基础,并为提高小麦育性和胁迫适应能力提供了见解。

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